Intelligent battery discharging method and related device
By obtaining work and battery information and adjusting the discharge strategy to meet task requirements, the system interruption caused by insufficient battery energy storage is solved, the effective management of intelligent battery discharge is realized, and the battery usage efficiency and system safety are improved.
Patent Information
- Application Number
- CN202510829041.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-20
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-06-20
AI Technical Summary
In the prior art, battery energy storage is limited and cannot be effectively managed, resulting in high-speed operation of the system when the power is insufficient, which may cause rapid energy storage to be exhausted and even system interruption. The battery energy storage capacity label does not match the actual capacity, making it impossible to accurately warn users, and there is a safety risk.
By obtaining work information and battery information, determine the work tasks and residual power, and determine whether the current discharge strategy meets the task requirements. If it is not met, adjust the discharge strategy according to the energy needs and working environment to generate a target discharge strategy to achieve intelligent battery discharge.
It realizes reasonable control of battery discharge according to actual needs, avoids system interruptions caused by insufficient power, and improves battery usage efficiency and system safety.
Smart Images

Figure CN120342040A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of batteries, and in particular, to a battery intelligent discharge method and related devices. Background Art
[0002] Portable electronic devices such as smartphones, tablet computers, or laptop computers are all equipped with internal power sources to meet the requirements of portable operation. Currently, internal power sources are mostly implemented with batteries. Since the energy storage of batteries is limited, how to efficiently use the energy storage in the batteries is an important issue. The simplest method is to reduce unnecessary power consumption. For example, after the system has been on standby for a period of time, turn off devices that are not immediately needed (such as the screen) or temporarily stop the operation of some applications to reduce power consumption. However, this method focuses on the system state and does not consider the state of the battery itself. When the energy storage of the battery is severely insufficient, if the system still runs at a high speed, it is very likely that the energy storage will be exhausted in a very short time, and even cause the system to be interrupted improperly, resulting in data loss, which is also harmful to software and hardware. In addition, due to the charge and discharge characteristics of the battery, usually after being used for a period of time, the maximum energy storage capacity of the battery decreases, resulting in a situation where the battery energy storage capacity indicated on the system often does not match the actual capacity. If the system is still allowed to run at a high speed when the actual energy storage is nearly insufficient, the above problems will become more serious because the user cannot be correctly alerted to the correct capacity. Currently, there is already a method of monitoring the battery energy storage capacity to adjust the throttle rate of the system clock. Although it can reduce the consumption of battery energy storage, the system still operates at a high clock speed. The high-clock-speed system itself will have a certain amount of power consumption, and there is still a risk to the safety of the system when the energy storage is insufficient or the actual capacity is significantly different from the detected capacity.
[0003] Therefore, how to reasonably control the battery to discharge has become an urgent technical problem to be solved. Summary of the Invention
[0004] In order to reasonably control the battery to discharge, this application provides a battery intelligent discharge method and related devices.
[0005] In a first aspect, a battery intelligent discharge method provided by this application adopts the following technical solution: A battery intelligent discharge method, comprising: Obtain working information and battery information; Determine working task information according to the working information, and at the same time determine remaining power information according to the battery information; Obtain a first discharge strategy from the battery information, and judge whether the remaining power information meets the working task information according to the first discharge strategy; If not, then determine energy demand information according to the working information; Determine a second discharge strategy according to the remaining power information and the energy demand information; Determine the working environment information from the working information and update the second discharge strategy to generate a target discharge strategy; Conduct working power supply according to the target discharge strategy.
[0006] Optionally, the step of obtaining a first discharge strategy from the battery information and determining whether the remaining power information meets the working task information according to the first discharge strategy includes: Obtain a first discharge strategy from the battery information; Determine the actual usage duration according to the first discharge strategy in combination with the remaining power information; Determine the remaining working duration according to the working task information; Determine whether the remaining power information meets the working task information according to the actual usage duration and the remaining working duration.
[0007] Optionally, the step of determining the actual usage duration according to the first discharge strategy in combination with the remaining power information includes: Obtain discharge details process information from the first discharge strategy; Determine the discharge details information in each process interval according to the discharge details process information; Determine the actual usage duration according to the discharge details information in combination with the remaining power information.
[0008] Optionally, the step of determining the energy demand according to the working information includes: Determine the work plan content from the working information; Obtain the output change conditions in the work plan content; Determine the corresponding work segmented plan according to the output change conditions; Determine the corresponding energy demand according to the work segmented plan.
[0009] Optionally, the step of determining the corresponding energy demand according to the work segmented plan includes: Determine the segmented output target in the work segmented plan; Determine the segmented output plan according to the segmented output target; Determine the energy demand according to all the segmented output plans.
[0010] Optionally, the step of determining the second discharge strategy according to the remaining power information and the energy demand information includes: Determine the stage demand plan according to the energy demand information; Judge whether it is a single demand plan in the stage demand plan; If so, determine a second discharge strategy according to the stage requirement plan and the remaining power information; If not, determine the stage energy supply information according to the requirement plan to generate a stage energy supply set with stage label information; Determine a second discharge strategy according to the stage energy supply set in combination with the remaining power information.
[0011] Optionally, the step of determining the working environment information in the working information and updating the second discharge strategy to generate a target discharge strategy includes: Determine the working environment information in the working information; Determine the power supply limit conditions according to the working environment; Update the second discharge strategy according to the power supply limit conditions to generate a target discharge strategy.
[0012] In a second aspect, the present application provides a battery intelligent discharge device, which includes: An information acquisition module, configured to acquire working information and battery information; A remaining power module, configured to determine working task information according to the working information, and at the same time determine the remaining power information according to the battery information; A condition judgment module, configured to obtain a first discharge strategy from the battery information and judge whether the remaining power information meets the working task information according to the first discharge strategy; An energy demand determination module, configured to, if not, determine energy demand information according to the working information; A second discharge strategy determination module, configured to determine a second discharge strategy according to the remaining power information and the energy demand information; A target discharge strategy module, configured to determine the working environment information in the working information and update the second discharge strategy to generate a target discharge strategy; A working power supply module, configured to perform working power supply according to the target discharge strategy.
[0013] In a third aspect, the present application provides a computer device, which includes: a memory and a processor. When the processor runs the computer instructions stored in the memory, it executes the method described in any one of the above.
[0014] In a fourth aspect, the present application provides a computer-readable storage medium, including instructions, which when run on a computer, cause the computer to execute the method described above.
[0015] In summary, the present application includes the following beneficial technical effects: This application obtains working information and battery information, determines working task information based on the working information, and determines remaining power information based on the battery information; determines a first discharge strategy in the battery information and determines whether it meets the working task information according to the first discharge strategy; if not, determines energy demand information based on the working information; determines a second discharge strategy based on the energy demand information and the remaining power information; updates the second discharge strategy according to the working environment information in the working information to generate a target discharge strategy and supplies power for work. By determining whether the working task information is met, the switching of battery energy supply is realized, and the discharge strategy is adjusted in combination with the working environment information, achieving the technical effect of effectively supplying power. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic structural diagram of a computer device in the hardware operating environment involved in the embodiment solution of this application; Figure 2 It is a schematic flowchart of the first embodiment of the battery intelligent discharge method of this application; Figure 3 It is a schematic block diagram of the first embodiment of the battery intelligent discharge device of this application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] In order to make the objectives, technical solutions and advantages of this application clearer, the following further details this application through the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not used to limit this application.
[0018] Refer to Figure 1 , Figure 1 It is a schematic structural diagram of a computer device in the hardware operating environment involved in the embodiment solution of this application.
[0019] Such as Figure 1As shown in the figure, the computer device may include: a processor 1001, such as a Central Processing Unit (CPU), a communication bus 1002, a user interface 1003, a network interface 1004, and a memory 1005. Among them, the communication bus 1002 is used to realize the connection and communication between these components. The user interface 1003 may include a display screen (Display), an input unit such as a keyboard (Keyboard). Optionally, the user interface 1003 may further include a standard wired interface and a wireless interface. The network interface 1004 may optionally include a standard wired interface and a wireless interface (such as a Wireless-Fidelity (Wi-Fi) interface). The memory 1005 may be a high-speed Random Access Memory (RAM), or a stable Non-Volatile Memory (NVM), such as a disk memory. Optionally, the memory 1005 may also be a storage device independent of the aforementioned processor 1001.
[0020] Those skilled in the art can understand that Figure 1 the structure shown in does not constitute a limitation on the computer device, and it may include more or fewer components than shown in the figure, or combine some components, or have different component arrangements.
[0021] As Figure 1 shown, in the memory 1005 as a storage medium, there may be included an operating system, a network communication module, a user interface module, and a battery intelligent discharge program.
[0022] In Figure 1 the computer device shown, the network interface 1004 is mainly used for data communication with a network server; the user interface 1003 is mainly used for data interaction with a user; the processor 1001 and the memory 1005 in the computer device of the present application may be set in the computer device, and the computer device calls the battery intelligent discharge program stored in the memory 1005 through the processor 1001 and executes the battery intelligent discharge method provided by the embodiments of the present application.
[0023] The embodiments of the present application provide a battery intelligent discharge method. Referring to Figure 2 , Figure 2 it is a schematic flowchart of the first embodiment of the battery intelligent discharge method of the present application.
[0024] In this embodiment, the battery intelligent discharge method includes the following steps: Step S10: Obtain working information and battery information.
[0025] It should be noted that obtaining working information and battery information refers to obtaining relevant information from the executing entity of this embodiment. The executing entity of this embodiment can be an electric vehicle powered by a battery or other equipment with automated working functions, and this embodiment does not limit this.
[0026] It is understandable that a battery refers to a cup, trough or other container or part of a composite container that contains an electrolyte solution and a metal electrode to generate an electric current, and is a device that can convert chemical energy into electrical energy. It has a positive electrode and a negative electrode. With the advancement of science and technology, batteries generally refer to small devices that can generate electrical energy. Such as solar cells. The performance parameters of batteries mainly include electromotive force, capacity, specific energy and resistance. By using batteries as an energy source, a current with stable voltage, stable current, long-term stable power supply, and little external influence can be obtained. In addition, the battery has a simple structure, is easy to carry, and is easy to charge and discharge. It is not affected by external climate and temperature, has stable and reliable performance, and plays a great role in all aspects of modern social life. In this embodiment, the method of obtaining battery information refers to obtaining information using a sensor device with information acquisition or an information display device that comes with the battery.
[0027] It should be noted that, in this embodiment, the work information refers to the work progress information of the execution subject in this embodiment after it is started. By obtaining the work information, the specific current work situation and subsequent work plan of the execution subject in this embodiment can be determined. The acquisition of the work information can be received by actively reporting the work information from the execution subject in this embodiment, or by accessing a preset address to determine the work information.
[0028] It should be noted that this application is about a battery intelligent discharge method, so the two basic types of information that need to be obtained are battery information and work information. The work task is determined by determining the work information, and then the corresponding energy supply demand is determined according to the work task. If the energy supply demand conflicts with the current battery information, it is determined that the battery needs to be controlled for intelligent discharge.
[0029] Step S20: determining the work task information according to the work information, and determining the remaining power information according to the battery information.
[0030] It should be noted that determining the work task information based on the work information means obtaining the work task information by determining the work plan in the work information and then formulating the work flow.
[0031] In a specific implementation, determining the remaining power information according to the battery information refers to determining the remaining power of the battery, the current actual capacity of the battery, and the battery loss information through the battery specific parameters in the battery information.
[0032] Step S30: Obtain the first discharge strategy from the battery information, and determine whether the remaining power information meets the work task information according to the first discharge strategy.
[0033] It should be noted that the first discharge strategy refers to the battery discharge strategy during the current working process, specifically including the battery discharge parameters and the specific behavior information of the discharge. In this embodiment, there are a first discharge strategy and a second discharge strategy. The specific first and second have no prior or posterior significance, and are only used to distinguish different discharge strategies. The specific naming is not limited in this embodiment.
[0034] In specific implementation, to determine whether the remaining power information meets the work task information according to the first discharge strategy, the information on the future work plan in the work task information is obtained to determine the power demand information. Whether it meets the work task information is determined by combining the power demand information with the first discharge strategy.
[0035] It should be noted that obtaining the first discharge strategy from the battery information is to record the discharge mode in the battery information, and determine the first discharge strategy through the recorded battery discharge information. The first discharge strategy includes the specific value of the battery's power release and the discharge duration.
[0036] Furthermore, in order to improve the judgment accuracy, the steps of obtaining the first discharge strategy from the battery information and determining whether the remaining power information meets the work task information according to the first discharge strategy include: obtaining the first discharge strategy from the battery information; determining the actual usage duration according to the first discharge strategy and the remaining power information; determining the remaining work duration according to the work task information; and determining whether the remaining power information meets the work task information according to the actual usage duration and the remaining work duration.
[0037] In specific implementation, the steps of determining the actual usage duration according to the first discharge strategy and the remaining power information include: obtaining the discharge details process information in the first discharge strategy; determining the discharge details information in each process interval according to the discharge details process information; and determining the actual usage duration according to the discharge details information and the remaining power information.
[0038] It should be noted that in order to realize the judgment of the work mode switch, the steps of obtaining the energy consumption information and combining the current work progress information to judge whether the work mode needs to be switched include: obtaining the energy consumption information, determining the remaining work duration according to the energy consumption information; determining the target work duration according to the current work progress information; and determining that the work mode needs to be switched if the target work duration exceeds the remaining work duration.
[0039] Step S40: If not, determine the energy demand information according to the work information.
[0040] It can be understood that if it is determined that the remaining power information meets the work task information, the first discharge strategy will be maintained for work energy supply, and the condition for mode switching is not met.
[0041] Further, in order to improve the accuracy of energy demand determination, the steps of determining energy demand according to work information include: determining the work plan content in the work information; obtaining the output change condition in the work plan content; determining the corresponding work segment plan according to the output change condition; and determining the corresponding energy demand according to the work segment plan.
[0042] It should be noted that the steps of determining the corresponding energy demand according to the work segment plan include: determining the segment output target in the work segment plan; determining the segment output plan according to the segment output target; and determining the energy demand according to all segment output plans.
[0043] In a specific implementation, before performing the step of determining the work plan content in the work information, it is also necessary to perform data cleaning on the collected data. In this embodiment, data cleaning refers to the process of re-reviewing and verifying data, aiming to delete duplicate information, correct existing errors, and provide data consistency.
[0044] It can be understood that the above steps of determining the work plan content in the work information, obtaining the output change condition in the work plan content, determining the corresponding work segment plan according to the output change condition, and determining the corresponding energy demand according to the work segment plan require data cleaning of the collected work information before this process, aiming to delete useless data, streamline the data to save the resource consumption required for calculation in the subsequent process, and improve the accuracy in the process of energy demand determination.
[0045] In a specific implementation, it is determined whether the current work task information belongs to a default task or a specified task, where the default task is a task without specific actual tasks or a monotonous task; and the specified task includes task progress, task duration, task content, and task note information, etc.
[0046] Step S50: Determine the second discharge strategy according to the remaining power information and the energy demand information.
[0047] Further, in order to achieve the technical effect of determining the second discharge strategy, the steps of determining the second discharge strategy according to the remaining power information and the energy demand information include: determining the stage demand plan according to the energy demand information; determining whether it is a single demand plan in the stage demand plan; if so, determining the second discharge strategy according to the stage demand plan and the remaining power information; if not, determining the stage energy supply information according to the demand plan to generate a stage energy supply set with stage label information; and determining the second discharge strategy according to the stage energy supply set in combination with the remaining power information.
[0048] In a specific implementation, the second discharge strategy is determined by obtaining a preset strategy set after determining the actual power consumption demand, generating traversal conditions in combination with the actual battery power situation, and traversing the preset strategy set according to the traversal conditions to obtain the second discharge strategy.
[0049] It should be noted that traversal means that along a certain search route, each node in the tree (or graph) is visited once. The operations performed on the visited nodes depend on the specific application problem. The specific access operations may be to check the value of the node, update the value of the node, etc. For different traversal methods, the order of visiting nodes is different. Traversal is one of the most important operations on a binary tree and is the basis for other operations on a binary tree. Of course, the concept of traversal is also applicable to the case of multi-element sets, such as arrays.
[0050] Step S60: Determine the working environment information in the work information and update the second discharge strategy to generate a target discharge strategy.
[0051] Furthermore, in order to reasonably generate a discharge strategy, the step of determining the working environment information in the work information and updating the second discharge strategy to generate a target discharge strategy includes: determining the working environment information in the work information; determining the power supply limit conditions according to the working environment; updating the second discharge strategy according to the power supply limit conditions to generate a target discharge strategy.
[0052] It should be noted that the working environment includes the limit conditions of the current power supply demand of the execution subject of this embodiment, and the second discharge strategy is adjusted according to the working environment.
[0053] Step S70: Perform power supply for work according to the target discharge strategy.
[0054] In this embodiment, by obtaining work information and battery information, the work task information is determined according to the work information and the remaining power information is determined according to the battery information; the first discharge strategy is determined in the battery information and it is judged whether the work task information is satisfied according to the first discharge strategy; if not, the energy demand information is determined according to the work information; the second discharge strategy is determined according to the energy demand information and the remaining power information; the second discharge strategy is updated according to the working environment information in the work information to generate a target discharge strategy and power supply for work is performed. By judging whether the work task information is satisfied, the switching of battery energy supply is realized, and the discharge strategy is adjusted in combination with the working environment information, achieving the technical effect of effectively supplying power.
[0055] In addition, an embodiment of the present application also proposes a computer-readable storage medium, on which a program for intelligent battery discharge is stored. When the program for intelligent battery discharge is executed by a processor, the steps of the method for intelligent battery discharge as described above are implemented.
[0056] Reference Figure 3 , Figure 3 which is the structural block diagram of the first embodiment of the battery intelligent discharge device of the present application.
[0057] As Figure 3 shown, the battery intelligent discharge device proposed in the embodiment of the present application includes: An information acquisition module 10 for acquiring working information and battery information; A remaining power module 20 for determining working task information according to the working information and simultaneously determining remaining power information according to the battery information; A condition judgment module 30 for obtaining a first discharge strategy from the battery information and judging whether the remaining power information meets the working task information according to the first discharge strategy; An energy demand determination module 40 for, if not, determining energy demand information according to the working information; A second discharge strategy determination module 50 for determining a second discharge strategy according to the remaining power information and the energy demand information; A target discharge strategy module 60 for determining working environment information from the working information and updating the second discharge strategy to generate a target discharge strategy; A working power supply module 70 for supplying power for work according to the target discharge strategy.
[0058] It should be understood that the above is only for illustration and does not impose any limitation on the technical solution of the present application. In specific applications, those skilled in the art can set according to needs, and the present application does not limit this.
[0059] In this embodiment, by acquiring working information and battery information, determining working task information according to the working information and simultaneously determining remaining power information according to the battery information; determining a first discharge strategy from the battery information and judging whether it meets the working task information according to the first discharge strategy; if not, determining energy demand information according to the working information; determining a second discharge strategy according to the energy demand information and the remaining power information; updating the second discharge strategy according to the working environment information in the working information to generate a target discharge strategy and supplying power for work. By judging whether the working task information is met, the switching of battery energy supply is realized, and the discharge strategy is adjusted in combination with the working environment information, achieving the technical effect of effectively supplying power.
[0060] In one embodiment, the condition judgment module 30 is further configured to obtain a first discharge strategy from the battery information; determine the actual usage duration according to the first discharge strategy in combination with the remaining power information; determine the remaining working duration according to the working task information; and judge whether the remaining power information meets the working task information according to the actual usage duration and the remaining working duration.
[0061] In one embodiment, the condition judgment module 30 is further configured to obtain discharge details process information in the first discharge strategy; determine the discharge details information in each process interval according to the discharge details process information; and determine the actual usage duration according to the discharge details information in combination with the remaining power information.
[0062] In one embodiment, the energy demand determination module 40 is further configured to determine the work plan content in the work information; obtain the output change conditions in the work plan content; determine the corresponding work segmentation plan according to the output change conditions; and determine the corresponding energy demand according to the work segmentation plan.
[0063] In one embodiment, the energy demand determination module 40 is further configured to determine the segmented output target in the work segmentation plan; determine the segmented output plan according to the segmented output target; and determine the energy demand according to all the segmented output plans.
[0064] In one embodiment, the second discharge strategy determination module 50 is further configured to determine the stage demand plan according to the energy demand information; determine whether it is a single demand plan in the stage demand plan; if so, determine the second discharge strategy according to the stage demand plan and the remaining power information; if not, determine the stage energy supply information according to the demand plan to generate a stage energy supply set with stage label information; and determine the second discharge strategy according to the stage energy supply set in combination with the remaining power information.
[0065] In one embodiment, the target discharge strategy module 60 is further configured to determine the work environment information in the work information; determine the power supply limit conditions according to the work environment; and update the second discharge strategy according to the power supply limit conditions to generate the target discharge strategy.
[0066] It should be noted that the above-described work process is only illustrative and does not limit the protection scope of the present application. In actual applications, those skilled in the art can select some or all of them according to actual needs to achieve the purpose of the solution of this embodiment, and no limitation is made here.
[0067] In addition, for the technical details not described in detail in this embodiment, reference can be made to the battery intelligent discharge method provided in any embodiment of the present application, which will not be elaborated here.
[0068] In addition, it should be noted that in this text, the terms "including", "comprising" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or system including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or elements inherent to such a process, method, article or system. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of another identical element in the process, method, article or system including that element.
[0069] The serial numbers of the embodiments of the present application above are only for description and do not represent the superiority or inferiority of the embodiments.
[0070] Through the description of the above embodiments, those skilled in the art can clearly understand that the above-described embodiment methods can be implemented by means of software plus a necessary general hardware platform. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as a read-only memory (ROM) / RAM, magnetic disk, optical disc), and includes several instructions for causing a terminal device (which can be a mobile phone, computer, server, or network device, etc.) to execute the methods described in the various embodiments of the present application.
[0071] The above are only the preferred embodiments of the present application and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present application.
Claims
1. A battery intelligent discharge method, characterized in that, Including: Obtain working information and battery information; Determine working task information according to the working information, and at the same time determine remaining power information according to the battery information; Obtain a first discharge strategy from the battery information, and judge whether the remaining power information meets the working task information according to the first discharge strategy; If not, determine energy demand information according to the working information; Determine a second discharge strategy according to the remaining power information and the energy demand information; Determine working environment information in the working information and update the second discharge strategy to generate a target discharge strategy; Perform power supply for work according to the target discharge strategy.
2. The battery intelligent discharge method according to claim 1, wherein The step of obtaining a first discharge strategy from the battery information and judging whether the remaining power information meets the working task information according to the first discharge strategy includes: Obtain a first discharge strategy from the battery information; Determine the actual usage duration according to the first discharge strategy in combination with the remaining power information; Determine the remaining working duration according to the working task information; Judge whether the remaining power information meets the working task information according to the actual usage duration and the remaining working duration.
3. The battery intelligent discharge method according to claim 2, wherein The step of determining the actual usage duration according to the first discharge strategy in combination with the remaining power information includes: Obtain discharge details process information from the first discharge strategy; Determine discharge details information in each process interval according to the discharge details process information; Determine the actual usage duration according to the discharge details information in combination with the remaining power information.
4. The battery intelligent discharge method according to claim 1, characterized in that The step of determining energy demand according to the working information includes: Determine the work plan content in the working information; Obtain the output change condition in the work plan content; Determine the corresponding work segmented plan according to the output change condition; Determine the corresponding energy demand according to the work segmented plan.
5. The battery intelligent discharging method according to claim 4, wherein The step of determining the corresponding energy demand according to the work segmented plan includes: Determine the segmented output target in the work segmented plan; Determine the segmented output plan according to the segmented output target; Determine the energy demand according to all the segmented output plans.
6. The battery intelligent discharge method according to claim 1, wherein The step of determining a second discharge strategy according to the remaining power information and the energy demand information includes: Determine the stage demand plan according to the energy demand information; Judge whether it is a single demand plan in the stage demand plan; If so, determine a second discharge strategy according to the stage demand plan and the remaining power information; If not, determine stage energy supply information according to the demand plan to generate a stage energy supply set with stage label information; Determine a second discharge strategy according to the stage energy supply set in combination with the remaining power information.
7. The battery intelligent discharge method according to claim 1, characterized in that The step of determining working environment information in the working information and updating the second discharge strategy to generate a target discharge strategy includes: Determine working environment information in the working information; Determine power supply limit conditions according to the working environment; Update the second discharge strategy according to the power supply limit conditions to generate a target discharge strategy.
8. An intelligent battery discharge device, characterized in that, The battery intelligent discharge device includes: An information acquisition module for acquiring working information and battery information; The remaining power module is used to determine the work task information according to the work information, and at the same time determine the remaining power information according to the battery information; The condition judgment module is used to obtain the first discharge strategy from the battery information and judge whether the remaining power information meets the work task information according to the first discharge strategy; The energy demand determination module is used to, if not, determine the energy demand information according to the work information; The second discharge strategy determination module is used to determine the second discharge strategy according to the remaining power information and the energy demand information; The target discharge strategy module is used to determine the work environment information from the work information and update the second discharge strategy to generate the target discharge strategy; The work power supply module is used to supply power for work according to the target discharge strategy.
9. A computer device, characterized in that, The device includes: a memory and a processor. When the processor runs the computer instructions stored in the memory, it executes the method according to any one of claims 1 to 7.
10. A computer-readable storage medium, characterized in that, It includes instructions that, when run on a computer, cause the computer to execute the method according to any one of claims 1 to 7.
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